采用0.3µm CMOS技术的多级环形振荡器的瞬态、FFT分析和物理设计

Pooja Gupta, Sanket Choudhary, Ayoush Johari
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引用次数: 1

摘要

环形振荡器是关键数字模块的基本模块,如锁相环,微处理器或任何其他时间相关和内存驱动电路。本文的目的是比较瞬态,分析多级环形振荡器的FFT和物理设计。使用300纳米工艺技术的设计应用了额外的DRC和NCC检查。环形振荡器设计是由一个电压偏置驱动和控制,可以通过SPICE代码改变。本文提出了一种基于压控振荡器的设计方案,该方案占地面积小,功耗低,噪声分布好,适用于宽带模拟混合信号电路。本文提出了11级、21级和51级环振。并在设计上进行了适当的瞬态和FFT处理。本文还将考虑各种设计考虑因素,包括SCMOS单元设计,电源或偏置电路以及基于工具的实现和基于SPICE的多级振荡器设计模拟。
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Transients, FFT analysis and Physical design of multi stage Ring Oscillators using 0.3µm CMOS technology
Ring Oscillators are basic blocks of key digital modules like PLL, microprocessor or any other time related and memory driven circuits. The purpose of this paper is to compare transients and analyze FFT of multistage ring oscillators and physical design of the same. Additional DRC and NCC checks are applied on the design using 300 nm process technologies. Ring oscillator design presented is driven and controlled by a voltage bias that can be varied by SPICE code. Here a VCO based design is presented that had less floor plan area, lesser power dissipation and consumption and also providing better noise profile which is helpful and applicable for wideband analog mixed signal circuits. Ring Oscillators in this paper, 11 stages, 21 stages and 51 stages are presented. and suitable transients and FFT is done on the design. The paper will also consider a variety of design considerations which are SCMOS cell designs, supply or biasing circuitries and tool based implementation and SPICE based simulations of the multistage oscillator design.
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